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A Rheologica! Study of Carbon Black Suspensions and Determination of Significant Factors Affecting the Slip Flow in In-Mold Coating (IMC) Using Design of Experiments

机译:rheologica!炭黑悬浮液的研究及影响模内涂层(IMC)防滑流量的重要因素使用实验设计

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In-mold coating (IMC) of plastic parts is a promising coating process in automotive and consumer products industry. An IMC material, such as carbon black suspension, can potentially be used as a top coat or paint. IMC is performed by injecting a reactive liquid polymer onto a part's surface in the end of the forming process while the part is still in the mold. The coating material flows under high pressure by compressing the part's surface, which causes a microchannel of 75-125 micron thickness. The IMC flow, particularly in a microchannel, tends to cause the slip boundary at the channel wall. This research work aims to (i) study rheological properties of carbon black suspended in acrylic resin in both macro- and micro-scale, (ii) study slipping at the wall in the microchannel, and (iii) determine significant factors affecting the slip flow of the carbon black suspension. A custom-built microslit rheometer was developed to conduct experiments to serve these purposes. By analyzing the viscosity data, a slip parameter called slip length could be determined. Statistical design of experiments was then applied to determine the effect of three factors including channel gap, operating temperature, and carbon black content on the slip boundary conditions of the microflow. The results showed that these three factors significantly affected the slip length of the flow of carbon black suspension.
机译:塑料件的模内涂层(IMC)是汽车和消费产品行业的有希望的涂层过程。 IMC材料,例如炭黑悬浮液,可能用作顶部涂层或涂料。通过将反应性液体聚合物喷射到成形过程结束时通过将反应性液体聚合物喷射到部分的表面上进行,而部件仍然在模具中。通过压缩部分表面,涂层材料在高压下流动,这导致75-125微米厚的微通道。特别是在微通道中的IMC流动倾向于在通道壁处引起滑动边界。该研究工作旨在(i)在微量通道壁上的宏观和微级悬浮在丙烯酸树脂中悬浮在丙烯酸树脂中的炭黑的流变性质,并确定影响滑动流动的重要因素炭黑悬浮液。开发了一种定制的微隙流变仪来进行实验以服务这些目的。通过分析粘度数据,可以确定称为滑动长度的滑移参数。然后应用实验的统计设计,以确定三种因素在微流量的滑动边界条件下的三种因素包括通道间隙,工作温度和炭黑含量。结果表明,这三种因素显着影响了炭黑悬浮液流的滑动长度。

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